Performance Evaluation of Bottom-Standing Submerged Breakwaters in Regular Waves Using the Meshless
Laboratory of Naval Aero-Hydrodynamics, USTO MB, Oran 31000, Algeria,
Laboratory of Civil Engineering and Environment, University Djillali Liabes of Sidi Bel-Abbes, Sidi Bel-Abbes 22000, Algeria%Department of Hydraulics, University Djillali Liabes of Sidi Bel-Abbes, Sidi Bel-Abbes 22000, Algeria,
In this paper, the improved version of the meshless singular boundary method (ISBM) is developed for analyzing the hydrodynamic performance of bottom-standing submerged breakwaters in regular normally incident waves. Both the single and dual prismatic breakwaters of rectangular and trapezoidal forms are examined. Only the impermeable breakwaters are considered in this study. The physical problem is cast in terms of the Laplace equation governing an irrotational flow and incompressible fluid motion with the appropriate mixed-type boundary conditions, and it is solved numerically using the ISBM. The numerical results are presented in terms of the hydrodynamic quantities of reflection and transmission coefficients. The values are first validated against the data of previous studies, computed, and discussed for a variety of structural conditions, including the height, width, and spacing of breakwater submergence. An excellent agreement is observed between the ISBM results and those of other methods. The breakwate
Journal of Ocean University of China
transmission; reflection; rectangular and trapezoidal breakwaters; meshless improved singular boundary method; regular normal waves